Quantitative and fixed-material adding device for meat-derived protein processing

Through the combined design of the quantitative feed pipe, feed push mechanism, one-way valve body and sensor, the length limitation of the meat source protein processing device in quantitative control is solved, and precise feeding is achieved within a large range, ensuring the stability and flexibility of meat source protein addition.

CN223076772UActive Publication Date: 2025-07-08NORTHEAST AGRICULTURAL UNIVERSITY
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Patent Information

Application Number
CN202422415417.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-07-08
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The existing meat-source protein processing devices are limited by the extrusion device length in quantitative control, making it difficult to achieve accurate quantitative feeding within a large range.

Method used

The combination design of the metering pipe, the material pushing mechanism, the one-way valve body, the sealing plug body and the sensor is adopted to detect the action position of the material pushing mechanism through the sensor to ensure that the via is completely blocked and flush with the inner wall of the metering pipe, achieving accurate control of the material pushing distance.

Benefits of technology

It realizes accurate quantity delivery on a large scale, ensuring the stable and reliable addition of meat-source proteins and adapting to quantitative control of different needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food processing, in particular to a meat-source protein processing quantitative and fixed-material adding device which comprises a quantitative material pipe, one end of the quantitative material pipe is connected with a material pushing mechanism, the other end of the quantitative material pipe is provided with a one-way valve body, a plurality of via holes are formed in the surface of the quantitative material pipe, and the quantitative material pipe is sleeved with a sealing plug body matched with the via holes and a connecting port. The sealing plug bodies located at the two ends are provided with sensors. The sensor is electrically connected with the pushing mechanism and used for detecting the action position of the pushing mechanism. The sealing plug body is used for ensuring that the via hole is completely blocked, and the end face of the sealing plug body is flush with the inner wall of the quantitative material pipe after blocking is completed, so that stable operation of the material pushing mechanism is ensured. The sensor is electrically connected with the pushing mechanism and used for detecting the action position of the pushing mechanism. The sensor is used for detecting the retraction position of the end of the pushing part and the ejection position of the pushing part. And when the amount of the ejected materials needs to be adjusted, the ejection distance can be controlled by adjusting the position of the sensor.
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Description

Technical Field

[0001] The utility model relates to the technical field of food processing, in particular to a quantitative and metered feeding device for meat - source protein processing. Background Art

[0002] Meat - source protein generally refers to the protein obtained from meat, which is similar to animal protein. Meat - source protein is usually added to many foods and beverages to increase their nutritional value or improve their taste. During the production process, it is usually necessary to add meat - source protein quantitatively to ensure that the nutrient components are controlled within the specified range.

[0003] For the existing devices that achieve quantification by extrusion, their quantitative control methods are easily restricted by the length of the extrusion device and can only achieve quantitative feeding within a small range. Content of the Utility Model

[0004] In view of the deficiencies of the existing technology, the utility model provides the following technical solutions:

[0005] A quantitative and metered feeding device for meat - source protein processing, comprising:

[0006] A quantitative material pipe, one end of the quantitative material pipe is connected with a pushing mechanism, and the other end has a one - way valve body. A plurality of through - holes are formed on the surface of the quantitative material pipe. A sealing plug body and a connection port that cooperate with the through - holes are sleeved on the quantitative material pipe. Sensors are provided on the sealing plug bodies at both ends.

[0007] As an improvement of the above - mentioned technical solution, the pushing mechanism is detachably and fixedly connected to the quantitative material pipe through a flange plate. The pushing part of the pushing mechanism extends into the quantitative material pipe, and a clearance seal is formed between the outer wall of the pushing part and the inner wall of the quantitative material pipe.

[0008] As an improvement of the above - mentioned technical solution, both sides of the sealing plug body are provided with arc - shaped fixing pieces I, which form a hoop structure with the sealing plug body. The ends of the arc - shaped fixing pieces I far from the sealing plug body are connected by bolts.

[0009] As an improvement of the above - mentioned technical solution, both sides of the lower part of the connection port are provided with arc - shaped fixing pieces II, which form a hoop structure with the connection port. The ends of the arc - shaped fixing pieces II far from the connection port are connected by bolts.

[0010] As an improvement of the above - mentioned technical solution, the sensor includes a position sensor.

[0011] As an improvement of the above - mentioned technical solution, the connection port is connected to the feeding mechanism through a flange.

[0012] Advantages of the Utility Model:

[0013] The top surface of the metering feed pipe is provided with a plurality of through holes, and there are a sealing plug body and a connection port that cooperate with the through holes. Sensors are provided on the sealing plug bodies at both ends. The sealing plug body is used to ensure that the through holes are completely blocked, and after the blocking is completed, the end face of the sealing plug body is flush with the inner wall of the metering feed pipe to ensure the stable operation of the material pushing mechanism. The sensors are electrically connected to the material pushing mechanism and are used to detect the action position of the material pushing mechanism. The sensors are used to detect the retracted position of the end of the material pushing part and the ejected position of the material pushing part. When it is necessary to adjust the amount of ejected material, the position of the sensor can be adjusted to control the ejection distance. Description of the Drawings

[0014] Figure 1 Is a three-dimensional view of a quantitative feeding and adding device for meat source protein processing;

[0015] Figure 2 Is a top view of a quantitative feeding and adding device for meat source protein processing;

[0016] Figure 3 Is Figure 2 The cross-sectional view at A-A in

[0017] Figure 4 Is a schematic structural view of the sealing plug body in a quantitative feeding and adding device for meat source protein processing;

[0018] Figure 5 Is a schematic structural view of the connection port in a quantitative feeding and adding device for meat source protein processing.

[0019] Reference numerals: 10, metering feed pipe; 20, material pushing mechanism; 21, material pushing part; 30, one-way valve body; 40, through hole; 50, sealing plug body; 51, first arc-shaped fixing piece; 60, connection port; 61, second arc-shaped fixing piece; 70, sensor; 80, flange. Detailed Description of the Embodiment

[0020] In order to make the purpose, technical solution and advantages of the present utility model clearer, the present utility model will be further described in detail below. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0021] In the existing device that realizes quantification by extrusion, its quantification control method is easily limited by the length of the extrusion device and can only realize quantitative feeding within a small range.

[0022] Referring to the attached Figures 1-5 as shown, Figure 1 Is a three-dimensional view of a quantitative feeding and adding device for meat source protein processing; Figure 2 Is a top view of a quantitative feeding and adding device for meat source protein processing; Figure 3 IsFigure 2 Cross-sectional view at A-A in the middle; Figure 4 It is a schematic structural diagram of a sealing plug body in a quantitative feeding and adding device for meat source protein processing; Figure 5 It is a schematic structural diagram of a connection port in a quantitative feeding and adding device for meat source protein processing.

[0023] To solve the above problems, the utility model provides a technical solution for a quantitative feeding and adding device for meat source protein processing:

[0024] A quantitative feeding and adding device for meat source protein processing includes: a quantitative material tube 10, a feeding mechanism 20, a one-way valve body 30, a through-hole 40, a sealing plug body 50, a connection port 60, and a sensor 70.

[0025] Among them, the quantitative material tube 10 is a tubular structure with openings at both ends. One end is connected to the feeding mechanism 20 so that the feeding mechanism 20 acts on the material inside the quantitative material tube 10 to achieve quantitative discharging. At the other end, there is a one-way valve body 30. The one-way valve body 30 is used to control the discharging end of the quantitative material tube 10. When the feeding mechanism 20 does not act on the material, the one-way valve body 30 is in a closed state. It will only be pushed open when the feeding mechanism 20 acts on the material.

[0026] A plurality of through-holes 40 are provided on the top surface of the quantitative material tube 10. There are a sealing plug body 50 and a connection port 60 that cooperate with the through-holes 40. Sensors 70 are provided on the sealing plug bodies 50 at both ends. The sealing plug body 50 is used to ensure that the through-holes 40 are completely blocked, and after the blocking is completed, the end surface of the sealing plug body 50 is flush with the inner wall of the quantitative material tube 10 to ensure the stable operation of the feeding mechanism 20. The sensor 70 is electrically connected to the feeding mechanism 20 and is used to detect the action position of the feeding mechanism 20. The sensor 70 is used to detect the retracted position of the end of the feeding part 21 and the ejected position of the feeding part 21. When it is necessary to adjust the amount of ejected material, the position of the sensor 70 can be adjusted to control the ejection distance.

[0027] In one embodiment, the feeding mechanism 20 is detachably and fixedly connected to the quantitative material tube 10 through a flange 80. The feeding part 21 of the feeding mechanism 20 extends into the quantitative material tube 10, and a clearance seal is formed between the outer wall of the feeding part 21 and the inner wall of the quantitative material tube 10.

[0028] The connection method of the flange 80 can ensure the connection and subsequent disassembly of the feeding mechanism 20 and the quantitative material tube 10. The feeding part 21 on the feeding mechanism 20 extends into the quantitative material tube 10, and the feeding part 21 extends or shortens in the quantitative material tube 10 under the driving action. To prevent the material from overflowing between the feeding part 21 and the quantitative material tube 10 during the pushing process, a clearance seal is designed between the outer wall of the feeding part 21 and the inner wall of the quantitative material tube 10 to ensure the stable and reliable pushing process.

[0029] In one embodiment, both sides of the sealing plug body 50 are provided with arc-shaped fixing pieces I 51, which form a hoop structure with the sealing plug body 50. One ends of the arc-shaped fixing pieces I 51 far away from the sealing plug body 50 are connected by bolts. The arc-shaped fixing pieces I 51 are thin metal sheets, which are welded or integrally formed with the sealing plug body 50. The arc-shaped fixing pieces I 51 are symmetrically arranged on both sides of the sealing plug body 50 and form a hoop structure. During use, the hoop structure is sleeved on the metering feed pipe 10. After the sealing plug body 50 is matched with the corresponding through hole 40, the corresponding bolts are tightened.

[0030] In one embodiment, both sides of the lower part of the connection port 60 are provided with arc-shaped fixing pieces II 61, which form a hoop structure with the connection port 60. One ends of the arc-shaped fixing pieces II 61 far away from the connection port 60 are connected by bolts. Similarly, the arc-shaped fixing pieces I 51 are made of thin metal sheets, which are welded or integrally formed with the lower part of the connection port 60. The arc-shaped fixing pieces I 51 are symmetrically arranged on both sides of the lower part of the connection port 60 and form a hoop structure. During use, the hoop structure is sleeved on the metering feed pipe 10. After the connection port 60 is matched with the corresponding through hole 40, the corresponding bolts are tightened.

[0031] The sensor 70 includes a position sensor, which is used to detect the retracted position of the end of the material pushing part 21 and the ejected position of the material pushing part 21.

[0032] The connection port 60 is connected to the feeding mechanism through a flange. The connection port 60 is connected to the feeding mechanism. The feeding mechanism is preferably a screw extrusion mechanism. After the material fills the metering feed pipe 10, the material pushing part 21 withdraws once.

[0033] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it.

Claims

1. A quantitative and metered feeding and adding device for meat - source protein processing, characterized in that, Including: A metering feed pipe (10), one end of the metering feed pipe (10) is connected to a pusher mechanism (20), the other end has a one-way valve body (30), a plurality of through holes (40) are formed on the surface of the metering feed pipe (10), a sealing plug body (50) and a connection port (60) that cooperate with the through holes (40) are sleeved on the metering feed pipe (10), and sensors (70) are provided on the sealing plug bodies (50) at both ends.

2. The quantitative and fixed-dose adding device for meat source protein processing according to claim 1, characterized in that: The pusher mechanism (20) is detachably and fixedly connected to the metering feed pipe (10) through a flange plate (80), the pusher part (21) of the pusher mechanism (20) extends into the metering feed pipe (10), and a clearance seal is formed between the outer wall of the pusher part (21) and the inner wall of the metering feed pipe (10).

3. The quantitative and fixed-dose adding device for meat source protein processing according to claim 1, characterized in that: Both sides of the sealing plug body (50) are provided with arc-shaped fixing pieces I (51), and form a hoop structure with the sealing plug body (50), and the ends of the arc-shaped fixing pieces I (51) far away from the sealing plug body (50) are connected by bolts.

4. The quantitative and fixed-dose adding device for meat source protein processing according to claim 1, characterized in that: Both sides of the lower part of the connection port (60) are provided with arc-shaped fixing pieces II (61), and form a hoop structure with the connection port (60), and the ends of the arc-shaped fixing pieces II (61) far away from the connection port (60) are connected by bolts.

5. The quantitative and fixed-dose adding device for meat source protein processing according to claim 1, characterized in that: The sensor (70) includes a position sensor.

6. The quantitative and fixed-dose adding device for meat source protein processing according to claim 1, characterized in that: The connection port (60) is connected to the feeding mechanism through a flange.